论文标题

基于任务的模数转换器

Task-Based Analog-to-Digital Converters

论文作者

Neuhaus, Peter, Shlezinger, Nir, Dörpinghaus, Meik, Eldar, Yonina C., Fettweis, Gerhard

论文摘要

在许多信号处理系统中,获得多元连续时间(CT)信号的数字表示是一个挑战。实际上,这些信号通常被获取以提取一些基本信息,即用于特定任务。在重建CT输入信号时,采用常规的任务无关类似于数字转换器(ADC)通常是为了最大程度地减少平均平方误差(MSE),在这种情况下可以是昂贵且能量的。在这项工作中,我们研究了基于任务的ADC,旨在获得多元CT输入过程的数字表示,目的是恢复基本的统计相关参数向量,称为\ emph {the Task}。在使用线性数字恢复过滤器恢复任务向量之前,该系统采用模拟过滤,均匀的采样和标量均匀量化。我们优化了模拟和数字过滤器,并在利用具有固定采样率和振幅分辨率的ADC时从一组模拟信号中恢复任务向量的可实现MSE的闭合形式表达式。根据我们的派生,我们提供了设计实用采集系统的指南,但对比特率有限制。我们的分析证明,仅在数字中恢复任务向量的直观方法,或者设计模拟过滤器以估计任务向量不如提议的关节设计。然后,我们考虑在费率预算下的一组匹配过滤器输出的恢复。我们在数值上验证了我们的理论观察结果,并证明基于任务的ADC基本上优于模拟匹配的过滤,并且仅在数字域中应用匹配的过滤器。 [...]

Obtaining digital representations of multivariate continuous-time (CT) signals is a challenge encountered in many signal processing systems. In practice, these signals are often acquired to extract some underlying information, i.e., for a specific task. Employing conventional task-agnostic analog-to-digital converters (ADCs), typically designed to minimize the mean squared error (MSE) in reconstructing the CT input signal, can be costly and energy-inefficient in such cases. In this work, we study task-based ADCs, which are designed to obtain a digital representation of a multivariate CT input process with the goal of recovering an underlying statistically related parameter vector, referred to as \emph{the task}. The proposed system employs analog filtering, uniform sampling, and scalar uniform quantization of the input process before recovering the task vector using a linear digital recovery filter. We optimize the analog and digital filters and derive closed-form expressions for the achievable MSE in recovering the task vector from a set of analog signals when utilizing ADCs with a fixed sampling rate and amplitude resolution. Based on our derivation, we provide guidelines for designing practical acquisition systems subject to a constraint on the bit rate. Our analysis proves that the intuitive approaches of either recovering the task vector solely in digital or designing the analog filter to estimate the task vector are inferior to the proposed joint design. We then consider the recovery of a set of matched filter outputs under a rate budget. We numerically verify our theoretical observations and demonstrate that task-based ADCs substantially outperform analog matched filtering as well as applying the matched filter solely in the digital domain. [...]

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